Patents by Inventor Johannes Seebach

Johannes Seebach has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20230111969
    Abstract: A method for laser cutting a workpiece having a thickness of less than 6 mm includes the steps of directing a first laser beam, a second laser beam, and a gas jet at an entrance surface of the workpiece such that the first and second laser beams at least partially overlap one another on the workpiece. The first laser beam has a smaller focus diameter than the second laser beam, a beam parameter product of the first laser beam is at most 5 mm*mrad, and a power proportion of the second laser beam of a total laser power is less than 20%. A cutting kerf with a broken cutting edge is formed on the entrance surface of the workpiece.
    Type: Application
    Filed: November 8, 2022
    Publication date: April 13, 2023
    Inventors: Hamza Dounassre, Tim Hesse, Olga Kramlich, Johannes Seebach, Nicolai Speker
  • Patent number: 11565348
    Abstract: The disclosure relates to methods and systems for joining at least two workpieces, including forming a weld joint by moving a machining beam, e.g., a laser beam, and the at least two workpieces relative to one another along a feed direction, wherein the movement of the machining beam and the two workpieces relative to one another is superimposed with a periodic movement in a movement path, e.g., a two-dimensional movement path, which extends in a transverse direction perpendicularly to the feed direction and, e.g., additionally in the feed direction. The movement path has, between two reversal points in the transverse direction, at least one stop point at which a speed component of the periodic movement in the transverse direction is zero. The invention also relates to computer program products and systems for carrying out the methods.
    Type: Grant
    Filed: January 10, 2020
    Date of Patent: January 31, 2023
    Assignee: TRUMPF Laser- und Systemtechnik GmbH
    Inventors: Nicolai Speker, Johannes Seebach
  • Publication number: 20230021130
    Abstract: A laser cutting nozzle for a laser machining unit is described, the nozzle including a passage for the laser beam and cutting gas. The passage extends between a nozzle inlet and a nozzle mouth along a passage longitudinal axis. The passage comprises a convergence portion and a divergence portion. In the entire divergence portion, the wall of the passage forms an angle of inclination relative to the passage longitudinal axis of at most 5°. In addition, the length of the divergence portion is less than 5 times the diameter of the constriction.
    Type: Application
    Filed: September 15, 2022
    Publication date: January 19, 2023
    Inventors: Nicolai Speker, Johannes Seebach, Olga Kramlich, Artur Schellenberg
  • Publication number: 20230001513
    Abstract: A method for laser welding two coated workpieces includes positioning an upper workpiece and a lower workpiece on top of each other and passing a first laser beam over the upper and lower workpieces from a side of the upper workpiece so as to at least partially evaporate the respective coating of each of the workpieces on their facing sides along a depletion trace. A second laser beam is passed over the workpieces from the side of the upper workpiece so as to melt a material of the two workpieces within the depletion trace, and thereby weld the workpieces to one another. In the first laser passing, the first laser beam melts the material of the upper workpiece, so that a web of non-melted material of the upper workpiece remaining between the melted material of the upper workpiece and the facing side of the upper workpiece.
    Type: Application
    Filed: August 31, 2022
    Publication date: January 5, 2023
    Inventors: Johannes Seebach, Nicolai Speker, Adrian Wolf, Tim Hesse
  • Patent number: 11458574
    Abstract: A laser cutting nozzle for a laser machining unit is described, the nozzle including a passage for the laser beam and cutting gas. The passage extends between a nozzle inlet and a nozzle mouth along a passage longitudinal axis. The passage comprises a convergence portion and a divergence portion. In the entire divergence portion, the wall of the passage forms an angle of inclination relative to the passage longitudinal axis of at most 5°. In addition, the length of the divergence portion is less than 5 times the diameter of the constriction.
    Type: Grant
    Filed: March 28, 2019
    Date of Patent: October 4, 2022
    Assignee: TRUMPF Laser-und Systemtechnik GmbH
    Inventors: Nicolai Speker, Johannes Seebach, Olga Kramlich, Artur Schellenberg
  • Publication number: 20220266386
    Abstract: A method for joining busbars includes reshaping a raw laser beam to obtain a reshaped laser beam. The reshaped laser beam comprises a core focus portion and at least one ring focus portion. The core focus portion and the ring focus portion are coaxial with respect to one another. The ring focus portion surrounds the core focus portion. The method further includes directing the reshaped laser beam to a plurality of busbars to weld the plurality of busbars to one another along at least one weld seam.
    Type: Application
    Filed: May 11, 2022
    Publication date: August 25, 2022
    Inventors: Steven Weidgang, Johannes Seebach, Oliver Bocksrocker, Joerg Smolenski, Nicolai Speker
  • Publication number: 20220234139
    Abstract: A method for laser welding of a workpiece includes welding at a corner joint of two workpiece parts of the workpiece by a welding laser beam to create an aluminum connection between the two workpiece parts, and feeding an output laser beam into a first end of a multiclad fiber to generate the welding laser beam. The multiclad fiber comprises at least a core fiber and a ring fiber surrounding the core fiber. A first portion LK of a laser power output of the output laser beam is fed into the core fiber, and a second portion LR of the laser power output of the output laser beam is fed into the ring fiber. A second end of the multiclad fiber is reproduced on the workpiece. The method further includes welding the workpiece by deep welding.
    Type: Application
    Filed: April 13, 2022
    Publication date: July 28, 2022
    Inventors: Philipp Scheible, Johannes Seebach, Oliver Bocksrocker
  • Publication number: 20220134473
    Abstract: A method for determining at least one spatter characteristic of spatter particles which emanate from a melting zone of a workpiece during machining of the workpiece using a machining beam, in particular a laser beam, includes recording images of a spatial region through which spatter particles fly during the machining of the workpiece, and determining the at least one spatter characteristic by evaluating the recorded images. The spatter particles are respectively tracked over multiple images recorded one after the other in time and the at least one spatter characteristic is determined by using across-the-images evaluation of the multiple images. A machining machine and a non-transitory computer program product are also provided.
    Type: Application
    Filed: January 19, 2022
    Publication date: May 5, 2022
    Inventors: Johannes Seebach, Nicolai Speker, Steven Weidgang
  • Publication number: 20210354232
    Abstract: Methods, machines, and computer program products are disclosed for determining the influence of a laser processing parameter on a laser processing operation by means of a laser beam are described. The methods include conducting linear laser processing operations with different values of the laser processing parameter, the speed of advance of the laser beam, respectively, being increased in the laser processing operations at least to such an extent that a processing interruption occurs; and determining a relationship between the processing lengths, the associated processing times, or the associated interruption speeds of the laser processing operations and the laser processing parameter using the measured processing lengths, the associated processing times, or the associated interruption speeds of the laser processing operations.
    Type: Application
    Filed: July 27, 2021
    Publication date: November 18, 2021
    Inventors: Artur Schellenberg, Johannes Seebach
  • Publication number: 20200147723
    Abstract: The disclosure relates to methods and systems for joining at least two workpieces, including forming a weld joint by moving a machining beam, e.g., a laser beam, and the at least two workpieces relative to one another along a feed direction, wherein the movement of the machining beam and the two workpieces relative to one another is superimposed with a periodic movement in a movement path, e.g., a two-dimensional movement path, which extends in a transverse direction perpendicularly to the feed direction and, e.g., additionally in the feed direction. The movement path has, between two reversal points in the transverse direction, at least one stop point at which a speed component of the periodic movement in the transverse direction is zero. The invention also relates to computer program products and systems for carrying out the methods.
    Type: Application
    Filed: January 10, 2020
    Publication date: May 14, 2020
    Inventors: Nicolai Speker, Johannes Seebach
  • Publication number: 20190217421
    Abstract: A laser cutting nozzle for a laser machining unit is described, the nozzle including a passage for the laser beam and cutting gas. The passage extends between a nozzle inlet and a nozzle mouth along a passage longitudinal axis. The passage comprises a convergence portion and a divergence portion. In the entire divergence portion, the wall of the passage forms an angle of inclination relative to the passage longitudinal axis of at most 5°. In addition, the length of the divergence portion is less than 5 times the diameter of the constriction.
    Type: Application
    Filed: March 28, 2019
    Publication date: July 18, 2019
    Inventors: Nicolai Speker, Johannes Seebach, Olga Kramlich, Artur Schellenberg